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AuthorAlkhatib, Afnan M.
AuthorHawari, Alaa H.
AuthorHafiz, Mhd. Ammar
AuthorBenamor, Abdelbaki
Available date2023-05-23T09:39:15Z
Publication Date2020
Publication NameJournal of Water Process Engineering
ResourceScopus
URIhttp://dx.doi.org/10.1016/j.jwpe.2020.101195
URIhttp://hdl.handle.net/10576/43368
AbstractThe removal of total phosphorous (TP) and chemical oxygen demand (COD) from a secondary treated wastewater (STW) using a new electrocoagulation electrode configuration was evaluated. Three different electrode modules were tested. Module 1 and module 2 used symmetrical aluminum electrodes with a direct current and an alternative current power supply, respectively. In module 3 unsymmetrical electrodes with an alternative current power supply were used. The impact of power supply type, electrode configuration, current density and electrolysis time were evaluated. The experimental results showed that the maximum removal efficiencies of TP and COD were achieved at a current density of 4.3 mA/cm2 and an electrolysis time of 30 min. The removal efficiency of TP was 88.3 %, 68.2 % and 46.0 % with module 3, module 2 and module 1, respectively. The removal efficiency of COD was 82.4 %, 66.8 % and 43.3 % with module 3, module 2 and module 1, respectively. The simulation results showed that in the case of module 3 the strength of the dielectrophoresis (DEP) force increases as the current density increases. Moreover, the DEP force decreases with distance and reaches minimum magnitude at the surface of the outer electrode. 2020 Elsevier Ltd
SponsorThe authors would like to thank Qatar University for the financial support provided by a Graduate Assistantship . In addition, the authors wish to thank Qatar Foundation for the financial support provided to one of the co-authors through a graduate sponsorship research award (GSRA4-2-0402-17013). The authors wish to also thank Qatar Public Works Authority (Ashghal) for the supply of the wastewater samples.
Languageen
PublisherElsevier
SubjectChemical oxygen demand (COD)
Dielectrophoresis (DEP)
Electrocoagulation
Secondary treated wastewater (STW)
Total phosphorous (TP)
TitleA novel cylindrical electrode configuration for inducing dielectrophoretic forces during electrocoagulation
TypeArticle
Volume Number35


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